Robshaw David C, Murtagh Conall F, Drust Barry, Erskine Robert M
School of Sport and Exercise Sciences, Liverpool John Moores University, Liverpool, L3 3AF, UK.
School of Sport, Exercise and Rehabilitation Sciences, University of Birmingham, Birmingham, UK.
Eur J Appl Physiol. 2025 Apr 8. doi: 10.1007/s00421-025-05763-9.
The aims of this study were to investigate (i) differences in gastrocnemius medialis (GM) tendon properties between adult male soccer players from an English category one academy (ASP) and male control participants (CON); and (ii) the relationships between GM tendon properties and jump performance. The GM tendon force-elongation relationship was measured in 13 ASP (mean ± SD height 1.81 ± 0.07 m; mass 73.6 ± 5.4 kg; age 18.8 ± 1.2 years) and 11 CON (1.74 ± 0.05 m; 71.2 ± 7.6 kg; 22.3 ± 3.0 years) using a combination of dynamometry, ultrasonography and electromyography. Participants also performed a series of unilateral and bilateral countermovement jumps (CMJ) and bilateral drop jumps on a force platform. GM tendon properties did not differ between groups but maximal tendon elongation correlated inversely with unilateral vertical CMJ peak power (r = -0.427, P = 0.037). Furthermore, leg stiffness and peak force during a drop jump correlated with GM tendon stiffness (r = 0.431-0.462, P = 0.035-0.023), maximal tendon force and Achilles tendon CSA (r = 0.409-0.737, P ≤ 0.047). These results suggest that GM tendon properties do not differ between ASP and CON but a stiffer GM tendon may facilitate the production of larger forces to increase power output during a unilateral vertical CMJ. Furthermore, higher force and stiffness outputs are achieved during a drop jump by stronger individuals with larger and stiffer GM tendons, which could lead to greater pitch-based performance and may represent a protective mechanism to shield the tendon against injury.
(i)来自英国一级足球学院的成年男性足球运动员(ASP)与男性对照参与者(CON)之间的腓肠肌内侧(GM)肌腱特性差异;以及(ii)GM肌腱特性与跳跃性能之间的关系。使用测力计、超声和肌电图相结合的方法,对13名ASP(平均±标准差身高1.81±0.07米;体重73.6±5.4千克;年龄18.8±1.2岁)和11名CON(1.74±0.05米;71.2±7.6千克;22.3±3.0岁)的GM肌腱力-伸长关系进行了测量。参与者还在力平台上进行了一系列单侧和双侧反向跳跃(CMJ)以及双侧下落跳跃。两组之间的GM肌腱特性没有差异,但最大肌腱伸长与单侧垂直CMJ峰值功率呈负相关(r = -0.427,P = 0.037)。此外,下落跳跃期间的腿部刚度和峰值力与GM肌腱刚度相关(r = 0.431 - 0.462,P = 0.035 - 0.023),最大肌腱力和跟腱横截面积相关(r = 0.409 - 0.737,P≤0.047)。这些结果表明,ASP和CON之间的GM肌腱特性没有差异,但更硬的GM肌腱可能有助于在单侧垂直CMJ期间产生更大的力以增加功率输出。此外,在下落跳跃期间,具有更大且更硬GM肌腱的更强壮个体能够实现更高的力和刚度输出,这可能导致更好的基于跳跃的表现,并且可能代表一种保护肌腱免受损伤的机制。